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By L. M. Barkovskii, G. N. Borzdov (auth.), A. Priou, A. Sihvola, S. Tretyakov, A. Vinogradov (eds.)

ISBN-10: 9401064180

ISBN-13: 9789401064187

ISBN-10: 9401157340

ISBN-13: 9789401157346

Recent advances in our realizing of complicated composite media, specially chiral media for microwave functions, recommend the feasibility of making novel fabrics with strange houses and the potential for developing new microwave units utilizing such fabrics. The emphasis of the ebook is on bi-anisotropic fabrics, whose finest function is the magnetoelectric interplay of the fields. The fabrics are anticipated to provide valuable purposes in radar expertise, aerospace, microwave engineering, production know-how, etc., equivalent to absorbers for low-reflectivity shields, reciprocal section shifters, polarization transformers. the 1st experiments with synthetic bi-anisotropic media were effectively carried out.

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Petersburg « The average boundary conditions for a grid of parallel conductors in some anisotropic moving and dispersive media» International Symposium on Electromagnetic Theory URSI, St. Petersburg, May Small distance between conductors - anisotropic non-dispersive motionless medium - moving non-dispersive medium - moving cold plasma - Hot motionless plasma 21. G. Y. V. GUREVICH, SA MAKSIMENKO (1995) Institute of Nuclear Problems, Minsk « Eigenwaves in chiral media with periodically inhomogeneous constitutive parameters» International Symposium on Electromagnetic Theory URSI, St.

14(2), 222-229. F. (1984) Characteristic waves in absorbing gyrotropic crystals of the orthorhombic system, So'/}. Phys. Crystallogr. 29(5), 497502. F. (1962) Propagation of light through a plate of uniaxial optically active crystals, Optics Spectrosc. 12(3),407-411. F. (1962) Propagation of light through a plate of uniaxial optically active crystals. II. Plates are parallel to the optic axis, Optics Spectrosc. 12(4),505-509. N. (1972) Propagation of light in optically active uniaxial crystals, So'/}.

01, ao = O. Incident light is p-polarized Before Fedorov developed the detailed analysis of the phenomenon of optical activity, the optical activity had been regarded as intrinsic only to the crystals with a symmetric gyration tensor, and, thus, 15 symmetry classes had been considered to be gyrotropic. Fedorov showed that crystals with an antisymmetric tensor reveal optical activity as well, and, thus, 3m, 4mm and 6mm classes should be considered as gyrotropic [2]. The light reflection from such crystals were studied in [32} and the peculiarities of the manifestation of optical activity in this case were shown.

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Advances in Complex Electromagnetic Materials by L. M. Barkovskii, G. N. Borzdov (auth.), A. Priou, A. Sihvola, S. Tretyakov, A. Vinogradov (eds.)


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